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January 17, 2026Development Growth & Differentiation0 citations

The Zinc Finger Protein Znf281 Is Essential for the Formation of Neural Tissue in Xenopus Embryos

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RKRyota KoikeMNMakoto NakamuraKTKimiko Takebayashi‐Suzuki

Key Points

  • This research aims to understand the role of Znf281 in the formation of neural tissue during early embryonic development.
  • Investigated znf281 transcript expression at blastula and gastrula stages in Xenopus embryos.
  • Conducted overexpression and knockdown experiments to assess impacts on neural tissue formation.
  • Analyzed effects on BMP signaling components, particularly phosphorylated Smad1/5/8 proteins.
  • Znf281 promotes neural development while inhibiting epidermal differentiation in ectodermal explants.
  • Overexpression leads to enhanced neural tissue formation with clear anterior-posterior patterning.
  • Knockdown of znf281 reduces the expression of neural markers, highlighting its necessity for neural development.

Abstract

ABSTRACT Zinc finger protein 281 (Znf281) plays important roles in human malignancies, stem cell pluripotency, and placental and embryonic development. However, the function of Znf281 during early neural development remains unclear. Here, we investigated the role of Znf281 in the formation of neural tissue in Xenopus embryos. znf281 transcripts are expressed in the animal hemisphere of the embryo at the blastula and gastrula stages and gradually localize in neural tissue after gastrulation. Overexpression of Znf281 induces neural tissue with anterior–posterior patterning and inhibits epidermal differentiation in ectodermal explants and embryos. Mechanistically, Znf281 reduces the levels of phosphorylated Smad1/5/8 proteins, the downstream effectors of bone morphogenetic protein (BMP) signaling, to promote neural development. Moreover, knockdown of Znf281 in embryos results in the reduced expression of neural markers, indicating that Znf281 is required for early neural development. These results suggest that Znf281 plays an important role in the establishment of the central nervous system by modulating BMP signaling during vertebrate embryogenesis.

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Cite This Study

Koike et al. (2026) studied this question.

synapsesocial.com/papers/696b2672d2a12237a9349c7dhttps://doi.org/10.1111/dgd.70040
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